A Novel Method to Measure Lightning-Current-Induced Impact Force on Laminated CFRP Composites

Yafeng Li, Shu Li, Jinru Sun, Xiangyu Tian, X. Yao, Jingliang Chen
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Abstract

In order to evaluate the mechanical effect of lightning strike on the carbon fiber reinforced polymer (CFRP) laminates, a novel measuring device that takes advantage of the polyvinylidene fluoride (PVDF) piezoelectric sensor was established. It was verified that this device could measure the dynamic impact force validly in the strong electromagnetic environment during a lightning strike. The influence of current amplitude on CFRP damage behavior was explored. The experimental results showed that the maximum impact force increased with the augment of current amplitude. Increasing the lightning current exacerbated the damage degree of CFRP laminates and made the mechanical damage mode more complicated. The obtained data provide scientific support for the analysis of lightning damage behavior of CFRP composites. Moreover, it provided a theoretical basis for the development and design of lightning protection solutions for aircraft.
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一种测量CFRP复合材料雷电流冲击强度的新方法
为了评估雷击对碳纤维增强聚合物(CFRP)层合板的力学影响,建立了一种基于聚偏氟乙烯(PVDF)压电传感器的新型测量装置。实验证明,该装置能有效地测量雷击时强电磁环境下的动态冲击力。探讨了电流幅值对碳纤维布损伤行为的影响。实验结果表明,最大撞击力随电流幅值的增大而增大。雷电电流的增大加剧了CFRP层合板的损伤程度,使其力学损伤模式更加复杂。所得数据为CFRP复合材料雷电损伤性能分析提供了科学依据。为飞机防雷方案的开发设计提供了理论依据。
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